Min Hyuk Park

Min Hyuk Park

Pusan National University

Assistant Professor

School of Materials Science and Engineering

Lab Overview

We are currently looking for new members to our group. Exciting research opportunities for graduate students and post-doc candidates are now open!

Research Area

  • #Materials science
  • #Ferroelectricity
  • #Thin film
  • #Condensed matter physics
  • #Doping
  • #Dielectric
  • #Optoelectronics
  • #Atomic layer deposition
  • #Capacitor
  • #Orthorhombic crystal system

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Related papers to
‘ Materials science ‘ : 56

  • Ferroelectricity and Antiferroelectricity of Doped Thin HfO2‐Based Films

    2015/03

    19.1 Impact Factor

    521 citations

    Min Hyuk Park, Young Hwan Lee, Han Joon Kim, Yu Jin Kim, Taehwan Moon, Keum Do Kim, Johannes Müller, Alfred Kersch, Uwe Schroeder, Thomas Mikolajick, Cheol Seong Hwang

    DOI : 10.1002/ADMA.201404531

    • #Materials science
    • #Optoelectronics
    • #Nanotechnology
    • #Thin film
    • #Doping
    • #Non-volatile memory
    • #Coercivity
    • #Ferroelectricity
    • #Perovskite (structure)
    • #Pyroelectricity
    • #Antiferroelectricity

All papers authored by
‘ Min Hyuk Park ’ : 60

  • Ferroelectricity and Antiferroelectricity of Doped Thin HfO2‐Based Films

    2015/03
    ADVANCED MATERIALS

    19.1 Impact Factor

    521 citations

    Min Hyuk Park, Young Hwan Lee, Han Joon Kim, Yu Jin Kim, Taehwan Moon, Keum Do Kim, Johannes Müller, Alfred Kersch, Uwe Schroeder, Thomas Mikolajick, Cheol Seong Hwang

    DOI : 10.1002/ADMA.201404531

    • #Materials science
    • #Optoelectronics
    • #Nanotechnology
    • #Thin film
    • #Doping
    • #Non-volatile memory
    • #Coercivity
    • #Ferroelectricity
    • #Perovskite (structure)
    • #Pyroelectricity
    • #Antiferroelectricity

Related papers to
‘ Materials science ‘ : 56

  • Ferroelectricity and Antiferroelectricity of Doped Thin HfO2‐Based Films

    2015/03
    ADVANCED MATERIALS

    19.1 Impact Factor

    521 citations

    Min Hyuk Park, Young Hwan Lee, Han Joon Kim, Yu Jin Kim, Taehwan Moon, Keum Do Kim, Johannes Müller, Alfred Kersch, Uwe Schroeder, Thomas Mikolajick, Cheol Seong Hwang

    DOI : 10.1002/ADMA.201404531

    • #Materials science
    • #Optoelectronics
    • #Nanotechnology
    • #Thin film
    • #Doping
    • #Non-volatile memory
    • #Coercivity
    • #Ferroelectricity
    • #Perovskite (structure)
    • #Pyroelectricity
    • #Antiferroelectricity
  • Thin HfxZr1‐xO2 Films: A New Lead‐Free System for Electrostatic Supercapacitors with Large Energy Storage Density and Robust Thermal Stability

    2014/11
    ADVANCED ENERGY MATERIALS

    16.1 Impact Factor

    205 citations

    Min Hyuk Park, Han Joon Kim, Yu Jin Kim, Taehwan Moon, Keum Do Kim, Cheol Seong Hwang

    DOI : 10.1002/AENM.201400610

    • #Materials science
    • #Nanotechnology
    • #Thermal stability
    • #Energy storage
    • #Free system
    • #Atomic layer deposition
    • #Supercapacitor

Looking for

Graduate student

Postdoctoral Researcher

Get access to
Contact information

Log in

All papers authored by
‘ Min Hyuk Park ’ : 60

  • Ferroelectricity and Antiferroelectricity of Doped Thin HfO2‐Based Films

    2015/03
    ADVANCED MATERIALS

    19.1 Impact Factor

    521 citations

    Min Hyuk Park, Young Hwan Lee, Han Joon Kim, Yu Jin Kim, Taehwan Moon, Keum Do Kim, Johannes Müller, Alfred Kersch, Uwe Schroeder, Thomas Mikolajick, Cheol Seong Hwang

    DOI : 10.1002/ADMA.201404531

    • #Materials science
    • #Optoelectronics
    • #Nanotechnology
    • #Thin film
    • #Doping
    • #Non-volatile memory
    • #Coercivity
    • #Ferroelectricity
    • #Perovskite (structure)
    • #Pyroelectricity
    • #Antiferroelectricity
  • Thin HfxZr1‐xO2 Films: A New Lead‐Free System for Electrostatic Supercapacitors with Large Energy Storage Density and Robust Thermal Stability

    2014/11
    ADVANCED ENERGY MATERIALS

    16.1 Impact Factor

    205 citations

    Min Hyuk Park, Han Joon Kim, Yu Jin Kim, Taehwan Moon, Keum Do Kim, Cheol Seong Hwang

    DOI : 10.1002/AENM.201400610

    • #Materials science
    • #Nanotechnology
    • #Thermal stability
    • #Energy storage
    • #Free system
    • #Atomic layer deposition
    • #Supercapacitor

Get access to Contact information

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